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Mitochondrial effectors of cellular senescence: beyond the free radical theory of aging

机译:细胞衰老的线粒体效应子:超越衰老的自由基理论

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Cellular senescence is a process that results from a variety of stresses, leading to a state of irreversible growth arrest. Senescent cells accumulate during aging and have been implicated in promoting a variety of age-related diseases. Mitochondrial stress is an effective inducer of cellular senescence, but the mechanisms by which mitochondria regulate permanent cell growth arrest are largely unexplored. Here, we review some of the mitochondrial signaling pathways that participate in establishing cellular senescence. We discuss the role of mitochondrial reactive oxygen species (ROS), mitochondrial dynamics (fission and fusion), the electron transport chain (ETC), bioenergetic balance, redox state, metabolic signature, and calcium homeostasis in controlling cellular growth arrest. We emphasize that multiple mitochondrial signaling pathways, besides mitochondrial ROS, can induce cellular senescence. Together, these pathways provide a broader perspective for studying the contribution of mitochondrial stress to aging, linking mitochondrial dysfunction and aging through the process of cellular senescence.
机译:细胞衰老是多种压力导致的过程,导致不可逆的生长停滞状态。衰老细胞在衰老过程中积累,并与促进各种与年龄有关的疾病有关。线粒体应激是细胞衰老的有效诱导剂,但线粒体调节永久性细胞生长停滞的机制尚待探索。在这里,我们回顾了参与建立细胞衰老的线粒体信号通路。我们讨论了线粒体活性氧(ROS),线粒体动力学(裂变和融合),电子传输链(ETC),生物能平衡,氧化还原状态,代谢特征和钙稳态在控制细胞生长停滞中的作用。我们强调,除了线粒体ROS外,多个线粒体信号传导途径都可以诱导细胞衰老。总之,这些途径为研究线粒体应激对衰老的贡献,通过细胞衰老的过程将线粒体功能障碍和衰老联系在一起提供了广阔的视野。

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